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甲状旁腺激素治疗对小鼠胫骨形态、骨密度及力学性能的纵向影响。

Longitudinal effects of Parathyroid Hormone treatment on morphological, densitometric and mechanical properties of mouse tibia.

作者信息

Lu Yongtao, Boudiffa Maya, Dall'Ara Enrico, Liu Yue, Bellantuono Ilaria, Viceconti Marco

机构信息

Department of Engineering Mechanics, Dalian University of Technology, Dalian, China; Department of Mechanical Engineering, The University of Sheffield, Sheffield, UK; Insigneo Institute for in Silico Medicine, The University of Sheffield, Sheffield, UK.

MRC Arthritis Research UK Centre for Integrated research into Musculoskeletal Ageing (CIMA), Department of Oncology and Metabolism, The University of Sheffield, Sheffield, UK.

出版信息

J Mech Behav Biomed Mater. 2017 Nov;75:244-251. doi: 10.1016/j.jmbbm.2017.07.034. Epub 2017 Jul 25.

Abstract

The use of Parathyroid Hormone (PTH) as bone anabolic is limited due to cost-benefit assessments. Preclinical studies evaluating the effects of PTH on bone have reported variable and often contradictory results. Here, we have applied a new approach using a combination of in-vivo longitudinal µCT, image processing techniques and finite element models to monitor early local changes in the whole tibia (divided in 40 compartments) and mechanical properties of female C57BL/6J mice treated with PTH 1-34, compared to controls. Compared with standard 3D bone morphometric analysis, our new approach allowed detection of much smaller and localised changes in bone mineral content (BMC) at very early time points (1 week vs 3 weeks with standard methods) and showed that changes do not occur uniformly over time and across the anatomical space. Indeed, in the PTH treated mice, significant changes in BMC were observed in the medial and posterior sectors of the proximal tibia, a week after treatment, and in the medial sector of the tibia midshaft region a week later (p < 0.05). By the third week, two thirds of the regions showed significantly higher values of BMC (p < 0.05). The effect of PTH on bone regional volume is similar to that on BMC, but there is almost no effect of PTH on bone tissue mineral density. The differences in estimated mechanical properties became significant after three weeks of treatment (p < 0.05). These results provide the first evidence of an early and localised PTH effect on murine bone, and show that our novel partitioning approach, compared to the standard evaluation protocol, allows a more precise quantification of bone changes following treatment, which would facilitate preclinical testing of novel mono- and/or combination therapies throughout the bone.

摘要

由于成本效益评估,甲状旁腺激素(PTH)作为骨合成代谢药物的应用受到限制。评估PTH对骨骼影响的临床前研究报告了不同且往往相互矛盾的结果。在此,我们应用了一种新方法,结合体内纵向微计算机断层扫描(µCT)、图像处理技术和有限元模型,来监测用PTH 1-34治疗的雌性C57BL/6J小鼠整个胫骨(分为40个区室)的早期局部变化和力学性能,并与对照组进行比较。与标准的三维骨形态计量分析相比,我们的新方法能够在非常早期的时间点(标准方法为3周,而我们的方法为1周)检测到骨矿物质含量(BMC)更小的局部变化,并且表明这些变化不会随时间和整个解剖空间均匀发生。事实上,在用PTH治疗的小鼠中,治疗一周后,在胫骨近端的内侧和后部区域观察到BMC有显著变化,一周后在胫骨干中部区域的内侧观察到BMC有显著变化(p<0.05)。到第三周时,三分之二的区域显示BMC值显著更高(p<0.05)。PTH对骨区域体积的影响与对BMC的影响相似,但PTH对骨组织矿物质密度几乎没有影响。治疗三周后,估计的力学性能差异变得显著(p<0.05)。这些结果首次证明了PTH对小鼠骨骼有早期局部效应,并表明与标准评估方案相比,我们的新型分区方法能够更精确地量化治疗后骨骼的变化,这将有助于对新型单药和/或联合疗法在整个骨骼中的临床前测试。

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